关于近期果园无人机喷洒系统应用的系统性文献综述

IF 5.7 Q1 AGRICULTURAL ENGINEERING Smart agricultural technology Pub Date : 2025-03-01 Epub Date: 2024-12-12 DOI:10.1016/j.atech.2024.100708
Giulio Calderone, Massimo Vincenzo Ferro, Pietro Catania
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引用次数: 0

摘要

在全球人口增长的背景下,优化作物生产效率需要现代农业。精准农业(PA)可以通过优化生产和质量标准来实现这一目标。PA已经实施了使用先进技术,如无人机系统(UAS),使资源利用效率的实现。无人机系统由于其可行性和通用性,在果园监测和植保产品(PPP)配送中发挥着关键作用。本文旨在探讨无人机喷洒系统(UASS)作为创新工具在果园优化管理、资源效率和可持续性方面的重要作用。该审查涉及对2019-2024年期间发表的一系列研究的分析。本研究对科学文献进行了全面的综述,重点关注航空喷雾漂移的影响,考虑了可能影响UASS PPP应用的主要参数。比较了UASS的操作参数及其不同的配置进行了深入的研究。研究了不同树冠层上UASS液滴沉积质量的效率,探讨了这些系统在果园中的应用效果。对UASS与传统果园喷洒方法进行了比较,并讨论了全球立法法规和未来展望。文献强调,使用高于冠层水平(ACL) 2 m的飞行高度,下洗效应确保了PPP的有效沉积,同时有效地限制了漂移。结果表明,近60%的果园UASS喷施处理采用水力喷嘴,明显多于离心喷嘴。由于冠层直径对应1.5 m的工作宽度,4旋翼UASS在沉积效率方面优于6旋翼和8旋翼UASS,最大限度地减少了漂移和地面损失,同时优化了横向覆盖。尽管PPP的UASS应用仍然需要克服一些挑战,但该综述强调了在果园空中喷洒应用的重要性以及该技术的巨大潜力。
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A systematic literature review on recent unmanned aerial spraying systems applications in orchards
In a context of global population growth, modern agriculture is required to optimize crop production efficiency. Precision agriculture (PA) can contribute to this by optimizing production and quality standards. PA has implemented the use of advanced technologies such as unmanned aerial system (UAS) that enable the implementation of resource use efficiency. UAS due to their feasibility and versatility, play a key role in orchard monitoring and plant protection product (PPP) distribution. The aim of this review is to explore the crucial role of unmanned aerial spraying systems (UASS) as innovative tools to optimize management, resource efficiency and sustainability of orchards. The review involved the analysis of a range of studies published in the period of 2019–2024. This study provides a comprehensive review of the scientific literature, focusing on the effect of aerial spray drift, considering the main parameters that could influence the application of PPP with UASS. A comparison of the operational parameters of UASS and their different configurations was examined in depth. The efficiency of droplet deposition quality of UASS on different canopy layers of trees was also examined, exploring the findings of these systems in orchards. The comparison between UASS and traditional orchard spraying methods was explored, and global legislative regulations and future perspectives were discussed. The literature highlights that using a flight height of 2 m above the canopy level (ACL), the downwash effect ensures efficient deposition of PPP while effectively limiting drift. The results show that approximately 60% of UASS spraying treatments in orchards use hydraulic nozzles, significantly more common than centrifugal nozzles. The 4-rotors UASS performed better than the 6-rotors and 8-rotors UASS in terms of deposition efficiency due to the 1.5 m working width corresponding to the canopy diameter, minimizing drift and ground losses while optimizing lateral coverage.
Although UASS application of PPP still has to overcome several challenges, the review highlighted the importance of aerial spraying applications in orchards and the huge potential of this technology.
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